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基于超声波的动态燃速测试系统的设计与应用

Design and Application of a Dynamic Combustion Speed Testing System Based on Ultrasonics

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【作者】 王睿智魏文龙曹振兴刘博桓闫小龙崔娟郑永秋江明郭珍赵冬青薛晨阳

【Author】 WANG Ruizhi;WEI Wenlong;CAO Zhenxing;LIU Bohuan;YAN Xiaolong;CUI Juan;ZHENG Yongqiu;JIANG Ming;GUO Zhen;ZHAO Dongqing;XUE Chenyang;State key Laboratory of Extreme Environment Optoelectronic Dynamic Measurement Technology and Instrument,North University of China;Huaihai Industry Group Co.,Ltd.;

【通讯作者】 闫小龙;

【机构】 中北大学极限环境光电动态测试技术与仪器全国重点实验室淮海工业集团有限公司

【摘要】 固体火箭发动机的燃面退移速度是评估发动机性能的重要参数,针对其动态性、精确性需求,本研究提出了一种高精度动态多路燃速测试系统。该系统由上位机、超声采集卡、换能器等组成,采集卡作为系统核心以FPGA为主控,结合高压脉冲波发射电路、回波信号处理电路及其他模块实现超声波的高压发射与回波采集。系统实现对多个通道的并行燃速实时测量,极大减小了系统的测量误差,提高测量精度。通过单介质标准试块的厚度测量实验验证系统的可行性与测量精度。最后进行Φ127标准试验发动机的燃速测量试验,并设置多靶线燃速测量方法作为对照。结果表明,本文所提出的多路燃速测试系统的燃速测量的平均误差<0.1 mm/s,展现出了较高的实时性和精度并具有更好的兼容性。

【Abstract】 The burn surface recession rate of solid rocket motors is a critical parameter for evaluating engine performance. To address the demands for dynamic response and precision,a high-precision dynamic multi-channel burn rate measurement system is presented. The system consists of a host computer,ultrasonic acquisition card,transducers,and other components. The acquisition card,serving as the core of the system,is controlled by an FPGA and integrated with high-pressure pulse wave emission circuitry,echo signal processing circuits,and other modules to achieve high-pressure ultrasound transmission and echo signal acquisition. The system enables real-time multi-channel parallel burn rate measurement,significantly reducing measurement errors and improving accuracy. The feasibility and measurement precision of the system are validated through thickness measurement experiments using a single-material standard test block. Subsequently,burn rate measurement tests are conducted on a Φ127 standard test engine,with a multi-target burn rate measurement method used as a reference. The results demonstrate that the proposed multi-channel burn rate measurement system achieves an average measurement error of <0.1 mm/s,showcasing high real-time performance,precision,and better compatibility.

【基金】 山西省基础研究计划项目(202203021221110)
  • 【文献出处】 传感技术学报 ,Chinese Journal of Sensors and Actuators , 编辑部邮箱 ,2026年04期
  • 【分类号】V435
  • 【下载频次】17
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